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Incomplete proteasomal degradation of green fluorescent proteins in the context of tandem fluorescent protein timers

机译:在串联荧光蛋白计时器的背景下绿色荧光蛋白的不完全蛋白酶体降解

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摘要

Tandem fluorescent protein timers (tFTs) report on protein age through time-dependent change in color, which can be exploited to study protein turnover and trafficking. Each tFT, composed of two fluorescent proteins (FPs) that differ in maturation kinetics, is suited to follow protein dynamics within a specific time range determined by the maturation rates of both FPs. So far, tFTs have been constructed by combining slower-maturing red fluorescent proteins (redFPs) with the faster-maturing superfolder green fluorescent protein (sfGFP). Toward a comprehensive characterization of tFTs, we compare here tFTs composed of different faster-maturing green fluorescent proteins (greenFPs) while keeping the slower-maturing redFP constant (mCherry). Our results indicate that the greenFP maturation kinetics influences the time range of a tFT. Moreover, we observe that commonly used greenFPs can partially withstand proteasomal degradation due to the stability of the FP fold, which results in accumulation of tFT fragments in the cell. Depending on the order of FPs in the timer, incomplete proteasomal degradation either shifts the time range of the tFT toward slower time scales or precludes its use for measurements of protein turnover. We identify greenFPs that are efficiently degraded by the proteasome and provide simple guidelines for the design of new tFTs.
机译:串联荧光蛋白计时器(tFTs)通过颜色随时间变化的颜色来报告蛋白质年龄,可用于研究蛋白质更新和运输。每个tFT由两个动力学成熟度不同的荧光蛋白(FP)组成,适合在特定时间范围内跟踪蛋白质动力学,该特定时间范围是由两个FP的成熟速率决定的。迄今为止,已经通过将成熟较慢的红色荧光蛋白(redFPs)和成熟较快的超文件夹绿色荧光蛋白(sfGFP)相结合来构建tFT。为了全面表征tFT,我们在这里比较了由不同的成熟较快的绿色荧光蛋白(greenFPs)组成的tFT,同时保持了成熟较慢的redFP恒定(mCherry)。我们的结果表明,greenFP成熟动力学会影响tFT的时间范围。此外,我们观察到由于FP折叠的稳定性,常用的greenFPs可以部分耐受蛋白酶体降解,从而导致tFT片段在细胞中积累。根据计时器中FP的顺序,不完整的蛋白酶体降解或者将tFT的时间范围移向较慢的时间范围,或者无法将其用于测量蛋白质更新。我们确定了可被蛋白酶体有效降解的greenFP,并为设计新的tFT提供了简单的指导。

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